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Use of antibodies to purified Newcastle disease virus glycoproteins for strain comparisons and characterizations.

The H/N and F1 glycoproteins responsible for hemagglutinin/neuraminidase (H/N) activity and fusion (F1) activity were purified from several Newcastle disease virus strains and used to produce antisera. These antisera can be used to clearly distinguish the virus strains by a number of techniques including radioimmunoassay, and so provide a means of classifying new virus isolates. The variations detected between strains are not related to field virulence.

Animals↗

Antigenic characterization of the internal proteins of Newcastle disease virus by monoclonal antibodies.

We have prepared and characterized monoclonal antibodies against the three internal structural proteins, M, P and NP, of Newcastle disease virus. At least two non-overlapping antigenic sites were delineated on the M protein, four on the P, and two on the NP by competitive binding assay. One of the two non-overlapping antigenic sites on the M protein was found to be a cluster of at least three distinct epitopes. Enhancement of antibody binding by the binding of a second antibody was observed with the M protein. The reactivity of these monoclonal antibodies with heterologous strains was studied by enzyme-linked immunosorbent assay. The results indicated that there are both highly conserved antigenic sites and those subject to remarkable change on both M and P proteins. On the other hand, NP appeared to be antigenically more stable.

Antibodies, Monoclonal↗

Immunoglobulins of the chicken antibody to Newcastle disease virus (Mukteswar and F strain).

The qualitative and quantitative development of chicken immunoglobulins in response to R2B (Mukteswar) and F strain of Newcastle disease virus was studied. One primary (R2B) and two secondary (R2B - R2B, F - R2B) vaccination trials were conducted. Sera was collected at weekly intervals and analyzed. There was an increase in total serum protein content in parallel to an increase in serum neutralizing (SN), hemagglutination inhibition (HI), and precipitating antibodies. The SN, HI and precipitating activities were detected both in IgM and IgG immunoglobulins when sera were treated with mercapto-ethanol. However, Sephadex G-200 fractionated sera showed only SN activity in the IgM fraction, whereas the IgG fraction showed both HI and SN activity. Serum IgM antibodies appeared during the first week following vaccination, then diminished, then rose again following secondary vaccination. Apparently, immunoglobulin induction and serological activities were not significantly influenced by the age of the chickens.

Animals↗

Detection of extraneous agents in vaccines using the polymerase chain reaction of Newcastle disease virus in poultry biologicals.

Reverse transcription-polymerase chain reaction (RT-PCR) in poultry vaccine was applied to the detection of Newcastle disease virus (NDV), using two primer pairs spanning the cleavage site of the FO fusion protein coding sequence. Amplification of a specific cDNA segment was possible from live and inactivated, oil-adjuvanted NDV vaccines without previous treatment. The RT-PCR was able to detect between 5 x 10(2) EID50 (in live vaccine preparations) and 10(5) EID(50) or 0.056 haemagglutinating units of NDV (in inactivated vaccine preparations). In addition, live vaccine preparations were inactivated with beta-propiolactone (beta-PL). Amplified cDNA was obtained after treatment with 0.1% beta-PL, whereas at a concentration of 1% or 10% no specific bands were visible in the agarose gel. These results demonstrate the applicability of the method for the control of poultry vaccines by ensuring the absence of extraneous agents.

Animal Testing Alternatives↗

[Induction of apoptosis in human hepatoma cell line SMMC7721 by Newcastle disease virus HN gene].

OBJECTIVE: To investigate the mechanisms of apoptosis induced in human hepatoma cell line SMMC7721 by plasmid pVHN constructed with Newcastle disease virus (NDV) HN gene. METHODS: Twenty-four h after transfection with liposome-plasmid pVHN complexes in vitro, the mortality rate of SMMC7721 cells was determined by MTT staining and flow cytometry (FCM) with PI staining. The alteration of mitochondrial trans-membrane potential of the cells was detected by FCM with rhodamine 123 staining. Cell genomic DNA was detected by agarose electrophoresis. The activation of caspase-3 was assayed by its substrate color reaction. RESULTS: Significant apoptosis was induced by transfection with plasmid pVHN into the cells for 24 h and the mortality rate was 50.0% (the mortality rate of control group was 5.2%). Genomic DNA was fragmented and mitochondrial trans-membrane potential was decreased, but caspase-3 activity increased. CONCLUSION: Significant apoptosis in SMMC7721 cells can be induced by NDV HN gene. Apoptosis may be resulted from the decrease of mitochondrial trans-membrane potential and activation of Caspase-3.

Apoptosis↗

Antigenic epitope characterization of matrix protein of Newcastle disease virus using monoclonal antibody approach: contrasting variability amongst NDV strains.

A panel of 15 monoclonal antibodies (MABs) against matrix (M) protein of Newcastle disease virus (NDV) was obtained and the specificity towards the M protein was proven by radioimmunoprecipitation assay and antigen capture enzyme-linked immunosorbent assay (ELISA). Further studies were directed to antigenic epitope mapping of the M protein by means of this panel. The epitope characterization was performed by competitive antibody-binding assay by means of labelling each MAB with biotin [3]. At least three clear non-overlapping and two partially overlapping groups were determined, each including four, one, eight, one, and one MAB, respectively. All the above MABs appeared to be induced by structural epitopes formed in conditions of tertiary structure of the native M antigen. Twelve reference and 51 recently isolated local NDV strains have been studied by means of this MAB panel, several lineages having been revealed. The high stability of some epitopes and different variability of the others was demonstrated. No correlation between the above lineages and some other properties of the studied NDV strains (host specificity, date and place of isolation) has been found.

Animals↗

Effects of Newcastle disease virus administration to mice on the metabolism of cerebral biogenic amines, plasma corticosterone, and lymphocyte proliferation.

Newcastle disease virus (NDV) administration to mice increased concentrations of plasma corticosterone, with a maximal effect at 8 h. This elevation of plasma corticosterone concentrations was not observed in hypophysectomized animals in which the completeness of the hypophysectomy was verified by functional tests. NDV administration consistently increased concentrations of free tryptophan in all brain regions examined (prefrontal cortex, hypothalamus, and brain stem). It also caused an activation of cerebral catecholamine and indoleamine metabolism as determined by measurement of the amines and their catabolites. 3-Methoxy,4-hydroxyphenylethyleneglycol (MHPG), the major catabolite of norepinephrine (NE), homovanillic acid (HVA), a major catabolite of dopamine (DA), and 5-hydroxyindoleacetic acid (5-HIAA), the major catabolite of serotonin (5-HT), were all increased in both hypothalamus and brain stem. Ratios of catabolites to the parent amine, considered to be an index of utilization of the neurotransmitters, were increased for NE, DA, and 5-HT in the hypothalamus and for DA and 5-HT in the brain stem. This pattern of changes resembles that observed following stressors such as footshock or restraint. There were also significant increases of tryptophan, HVA, dihydroxyphenylacetic acid (DOPAC), and 5-HIAA in hypophysectomized relative to sham-operated mice. The NDV treatment also increased thymus weights and markedly decreased the proliferative responses of isolated spleen cells to phytohemagglutinin, concanavalin A, pokeweed mitogen, and Escherichia coli lipopolysaccharide. These changes were not caused by increased circulating corticosterone because they were present at equal magnitude in hypophysectomized mice. Thymosin alpha 1 concentrations in the plasma were not altered by NDV or hypophysectomy. These results indicate that administration of NDV to mice can initiate neurochemical and endocrine responses like those observed during stress and can also cause immunosuppression. They are thus consistent with the hypothesis that a virus can be a stressor.

Animals↗

Generation of a recombinant chimeric Newcastle disease virus vaccine that allows serological differentiation between vaccinated and infected animals.

Using a recently developed reverse genetics system, we have generated a recombinant Newcastle disease virus (NDV) vaccine in which the gene encoding the hemagglutinin-neuraminidase (HN) has been replaced by a hybrid HN gene consisting of the cytoplasmic domain, transmembrane region, and stalk region of HN of NDV, and the immunogenic globular domain of HN of avian paramyxovirus type 4 (APMV4). The objective was to generate a chimeric live vaccine that induces a protective immune response against NDV by eliciting neutralizing antibodies against the fusion (F) protein, but which can be differentiated from wild-type NDV on the basis of different antibodies elicited by their HN proteins. Pathogenicity tests in day-old chickens showed that the recombinant was non-virulent (intracerebral pathogenicity index [ICPI]=0.00). A vaccination-challenge experiment in 4-week-old specific pathogen free chickens demonstrated that the recombinant was completely safe and was able to protect chickens from challenge with a lethal dose of virulent NDV. By using a secreted form of HN produced in Pichia pastoris, a test was developed that allowed serological differentiation between animals vaccinated with the recombinant vaccine and animals infected with NDV. These results demonstrate that genetically modified marker vaccines can be generated from small RNA viruses that lack non-essential genes.

Animals↗

Agglutination-separation reactions of red blood cells sensitized with Newcastle disease virus: quantities, agglutination characteristics, and serology of altered virus and HN spikes released following neuraminidase reactivation.

Red blood cells (RBC) become sensitized following the elution of strain 575 Newcastle disease virus (NDV). The neuraminidase (NA) in the haemagglutinin (HA)-sialic acid configuration is inactive. The HA on sensitized RBC agglutinates normal RBC. The sialic acid on normal RBC initiated reactivation of the NA-a newly described function. Then normal-sensitized RBC agglomerates separated at 37 degrees C in the irreversible agglutination-separation (AS) reactions. With separation the AS products. HN spikes (150-200 kDa) and altered NDV, which contain fewer HN spikes than intact allantoic NDV, were removed from the sensitized RBC and the NDV membrane. Extraction of HN spikes from the membrane required more sialic acid than the removal of AS products from RBC. Thus 2 reactions were delineated for the orderly removal. Amounts of each released AS product suggest the source of the HN spikes. AS reactions and ether treatment of NDV increased the HA titres up to 19.2 fold. HA-sialic acid configurations were estimated by the amounts of normal RBC agglutinated by sensitized RBC and also by agglutination with fetuin. Elution of B1 vaccine, HN spikes from ether-treated NDV as well as AS products separated on sephadex resulted in incompletely sensitized RBC; fewer configurations were titrated with normal RBC; all failed to respond to anti-NA antibody. In contrast, sensitized RBC or suspensions of 575 NDV, but not the B1 vaccine strain, responded to both anti-NA and anti-HA antibody. Sensitization, slow elution, and responding to anti-NA antibody, which was accompanied by fluorescent foci on sensitized RBC, required intact NDV and the infrequent HA-sialic acid configuration. The NA was inactive for the HA-sialic acid configuration but cleaved fetuin, indicating substrate specificity. An inactive NA would allow time for fusion and NDV penetration rather than elution by an active NA early in NDV infection.

Animals↗

Newcastle disease virus vaccines: differences between Line C and Line 15I chickens with respect to virus replication and IgA responses in the gut and Harderian gland.

The Ulster 2C and Hitchner B1 strains of Newcastle disease virus were inoculated into inbred White Leghorn birds of the Reaseheath-C and 15I lines by the oculonasal route. Both viruses replicated in the Harderian gland (HG) and induced virus-specific IgA in the tears and bile. Ulster 2C but not Hitchner B1 replicated in the small intestine and induced virus-specific antibody forming cells (AFC) in the small intestine. Line 15I birds produced 120-fold more virus and 13-fold more IgA-AFC in the small intestine than Line C birds. Line C birds produced 20-fold more virus in the HG and at least three-fold higher titres of lacrimal IgA than Line 15I birds. The level of local virus replication in the HG or small intestine, which varied according to the line of bird, positively predicted the local antibody response in the same organ. When low doses of Ulster 2C were inoculated into Line C birds virus replication was low and irregular in birds older than 18 days whereas low doses of Hitchner B1 replicated in all ages of bird.

Aging↗

Production of labile Newcastle disease virus progeny after infection of chicken embryo cells in the presence of caffeine.

A study was undertaken to examine the effects of caffeine on Newcastle disease virus (NDV) infection of chicken embryo cells. Addition of 10 mM caffeine to the growth medium produced 95% reduction in progeny synthesis, 63% reduction in RNA synthesis, 45% reduction in protein synthesis, and 25% reduction in hemadsorption ability in NDV-infected cultures when compared with untreated, infected cultures. Purified NDV obtained from caffeine-treated, infected cultures was more sensitive to ultraviolet irradiation and to damage by freezing and thawing than was observed in untreated virus cultures. The SDS-polyacrylamide gel electrophoresis revealed that purified virions contained the same complement of polypeptides, but there was a significant variation in the quantities of several of the NDV polypeptides.

Animals↗

The occurrence of five major Newcastle disease virus genotypes (II, IV, V, VI and VIIb) in Bulgaria between 1959 and 1996.

Partial sequence and restriction enzyme cleavage site analyses of the fusion protein gene were used to genotype 47 Newcastle disease virus strains isolated between 1959 and 1996 in Bulgaria. Viruses belonged to five major genotypes that appeared to be associated with epizootics characterized by temporal and/or geographical restrictions. Genotype IV viruses (responsible for the European branch of the first panzootic) dominated the scene up to the early 1980s, interspersed with sporadic outbreaks caused by genotype II (US strains causing pneumoencephalitis) viruses. Genotype V viruses (transmitted by psittacines from South America) were first shown in 1973 and persisted until the late 1980s. Genotype VI (earliest members from the Middle-East 1968/70 outbreaks) was represented by scattered isolations between 1974 and 1996. A genotype VIIb (recent Middle East epizootic) virus was isolated as early as in 1984. Newcastle disease epizootics in Bulgaria were highlighted by multiple infection with more than one genotype at any one time.

Animals↗

[Differences in the polypeptide composition of virulent and avirulent strains of Newcastle disease virus in reproduction in chick embryo fibroblast culture].

The loss of the capacity for secondary infection of the cells in reproduction of avirulent Newcastle disease virus strains in chick embryo fibroblast cultures was found. This loss was shown to be associated with changes in the polypeptide composition of the virions. In virions of the avirulent Queensland strain incapable of infection CEF cultures an additional polypeptide was found with molecular mass of 67,000 daltons which was lacking in virions of the virulent Beaudette strain and corresponded to F0 protein of paramyxoviruses.

Animals↗

Detection and identification of the Newcastle disease virus infection by electron and immunoelectron microscopy.

Various electron microscopic (EM) and immunoelectron microscopic (IEM) techniques were used to demonstrate and identify the Newcastle disease virus (NDV) infection. By IEM, the number of virions in native allantoic fluids was increased 50-100 times in comparison with direct EM. The immunogold staining showed that a number of immunogold particles were specifically bound to the antigen determinants located on the virion surface and these results were much easier to interpret. The obtained results showed that the EM and IEM can be successfully employed for a precise and rapid detection of NDV as well as for identification of this infection among other viral or bacterial infections.

Animals↗

The influence of the incubation period and the amount of antigen on the haemagglutination inhibition titres to Newcastle disease virus.

An investigation was made into the significance of incubation period and amount of antigen used in the haemagglutination inhibition (HI) test for Newcastle disease virus in chicken serum. Also the results of a manually performed macrotest were compared with those of an automated microtest. Both incubation period and amount of antigen greatly influenced the HI titres. In incubating sera the titres increased up to 75 or 120 minutes when respectively 2 or 4 haemagglutinating units per volume were used. By contrast they became stable after 45 minutes' incubation with 8 units per volume. It was concluded that the latter combination gave optimum results. There were no significant differences between the results obtained with the macro and the micro technique.

Animals↗